Download Innovative Subsurface Remediation. Field Testing of by Mark L. Brusseau, David A. Sabatini, John S. Gierke, Michael PDF

By Mark L. Brusseau, David A. Sabatini, John S. Gierke, Michael D. Annable

content material: box demonstrations of cutting edge subsurface remediation and characterization applied sciences : creation / Mark L. Brusseau, John S. Gierke, and David A. Sabatini --
Surfactant choice standards for stronger subsurface remediation / David A. Sabatini, Jeffrey H. Harwell, and Robert C. Knox --
improved restoration of organics utilizing direct strength recommendations / T.R. Jarosch and B.B. Looney --
more desirable remediation demonstrations at Hill Air strength Base : creation / Philip B. Bedient, Anthony W. Holder, Carl G. Enfield, and A. Lynn wooden --
box demonstration stories of surfactant-enhanced solubilization and mobilization at Hill Air strength Base, Utah / Robert C. Knox, Bor Jier Shau, David A. Sabatini, and Jeffrey H. Harwell --
Demonstration of surfactant flooding of an alluvial aquifer infected with dense nonaqueous section liquid / C.L. Brown, M. Delshad, V. Dwarakanath, R.E. Jackson, J.T. Londergan, H.W. Meinardus, D.C. McKinney, T. Oolman, G.A. Pope, and W.H. Wade --
In-situ solubilization through cosolvent and surfactant-cosolvent combinations / Michael D. Annable, James W. Jawitz, Randall ok. Sillan, and P. Suresh Rao --
layout and function of a box cosolvent flooding try for nonaqueous part liquid mobilization / Ronald W. Falta, Cindy M. Lee, Scott E. Brame, Eberhard Roeder, Lynn wooden, and Carl Enfield --
box try of cyclodextrin for better in-situ flushing of multiple-component immiscible natural liquid infection : undertaking assessment and preliminary effects / Mark L. Brusseau, John E. McCray, Gwynn R. Johnson, Xiaojiang Wang, A. Lynn wooden, and Carl Enfield --
box try out of cyclodextrin for superior in-situ flushing of multiple-component immiscible natural liquid illness : comparability to water flushing / John E. McCray, Kenneth D. Bryan, R. Brent Cain, Gwynn R. Johnson, William J. Blanford, and Mark L. Brusseau --
box try out of air sparging coupled with soil vapor extraction / John S. Gierke, Christopher L. Wojick, and Neil J. Hutzler --
functionality evaluation of in-well aeration for the remediation of an aquifer infected by way of a multicomponent immiscible liquid / William J. Blanford, E.J. Klingel, Gwynn R. Johnson, R. Brent Cain, Carl Enfield, and Mark L. Brusseau --
Groundwater remediation of chromium utilizing zero-valent iron in a permeable reactive barrier / Robert W. Puls, Robert M. Powell, Cynthia J. Paul, and David Blowes --
concerns for leading edge remediation know-how overview sampling plans / Michael J. Barcelona and David R. Jaglowski --
The partitioning tracer strategy for in-situ detection and quantification of immiscible beverages within the subsurface / Mark L. Brusseau, N.T. Nelson, and R. Brent Cain --
research of partitioning tracers for selecting coal tar saturation in soils / Nancy J. Hayden and Harold C. Linnemeyer --
A biotracer try for characterizing the in-situ biodegradation strength linked to subsurface platforms / Mark L. Brusseau, Joseph J. Piatt, Jiann-Ming Wang, and Max Q. Hu --
A diffusive tracer-test process for investigating the effect of mass move procedures on field-scale solute shipping / Mark L. Brasseau, Q. Hu, N.T. Nelson, and R. Brent Cain --
Contaminant shipping and destiny in a resource sector of a chlorinated-solvent infected Superfund website : evaluate and preliminary result of a complicated website characterization venture / Mark L. Brusseau, J.W. Rohrer, T.M. Decker, N.T. Nelson, and W.R. Linderfelt.

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Content material: box demonstrations of cutting edge subsurface remediation and characterization applied sciences : advent / Mark L. Brusseau, John S. Gierke, and David A. Sabatini -- Surfactant choice standards for superior subsurface remediation / David A. Sabatini, Jeffrey H. Harwell, and Robert C. Knox -- better restoration of organics utilizing direct strength ideas / T.

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Extra info for Innovative Subsurface Remediation. Field Testing of Physical, Chemical, and Characterization Technologies

Example text

The most applicable transmission frequencies for soil remediation applications are in the 1 to 100 MHz range. Higher frequencies are more readily absorbed by the sediment matrix, but there is a trade off in the radial influence. The radial influence, often defined as the skin depth (where the field strength has been attenuated by a factor of 1/e) is inversely proportional to the square root of the frequency. However, the effective radial influence of the EM field will grow as the soil near the electrode or applicator dries and becomes less lossy (lower loss tangent).

Surface equipment includes an RF generator, matching network, dummy load, controls, and diagnostics all of which can typically be housed in a small trailer on the order of 8' χ 8' χ 20' (assuming generator powers less than 50 kW). Beyond this equipment, the dipole applicator needs little else besides space for running transmission lines. The triplate technique will typically require good surface access and additional drilling. The spacing between plates are roughly equivalent to spacing between applicators, however, the spacing of electrodes within a row is half the spacing between plates, therefore the triplate design would require approximately twice the number of boreholes used in an applicator array design.

No water injection is required). g. under buildings or tanks). Further development in this area is needed on low cost, high power, solid state RF generators (8), testing of automated matching networks for high power, high dynamic range applications, and field testing of multiple phased applicator arrays. Development of models which combine fluid, thermal and contaminant flow to ensure proper capture and/or containment is a universal need for all heating technologies (4). While not a significant factor in most remedial applications, research is needed on the physical and chemical characteristics of the subsurface following heating at high temperatures (> 250 °C).

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